DocumentCode
1033016
Title
The OPERA magnetic spectrometer
Author
Ambrosio, M. ; Brugnera, R. ; Dusini, S. ; Dulach, B. ; Fanin, C. ; Felici, G. ; Corso, F. Dal ; Garfagnini, A. ; Grianti, F. ; Gustavino, C. ; Monacelli, P. ; Paoloni, A. ; Stanco, L. ; Spinetti, M. ; Terranova, F. ; Votano, L.
Author_Institution
Dept. of Phys., Univ. of Napoli & INFN sez. di Napoli, Italy
Volume
51
Issue
3
fYear
2004
fDate
6/1/2004 12:00:00 AM
Firstpage
975
Lastpage
979
Abstract
The OPERA neutrino oscillation experiment foresees the construction of two magnetized iron spectrometers located after the lead-nuclear emulsion targets. The magnet is made up of two vertical walls of rectangular cross section connected by return yokes. The particle trajectories are measured by high precision drift tubes located before and after the arms of the magnet. Moreover, the magnet steel is instrumented with resistive plate chambers that ease pattern recognition and allow a calorimetric measurement of the hadronic showers. In this paper, we review the construction of the spectrometers. In particular, we describe the results obtained from the magnet and RPC prototypes and the installation of the final apparatus at the Gran Sasso laboratories. We discuss the mechanical and magnetic properties of the steel and the techniques employed to calibrate the field in the bulk of the magnet. Moreover, results of the tests and issues concerning the mass production of the resistive plate chambers are reported. Finally, the expected physics performance of the detector is described; estimates rely on numerical simulations and the outcome of the tests described above.
Keywords
drift chambers; neutrino detection; neutrino oscillations; particle calorimetry; particle spectrometers; reviews; steel; Gran Sasso laboratories; OPERA magnetic spectrometer; OPERA neutrino oscillation experiment; RFC prototypes; calorimetric measurement; detector performance; gas detector; hadronic shower; high precision drift tube chamber; lead-nuclear emulsion target; magnet steel; magnetic field monitoring; magnetic properties; magnetized iron spectrometer; mechanical properties; particle tracking; particle trajectory measurement; pattern recognition; rectangular cross section vertical walls; resistive plate chamber; return yokes; review; Arm; Instruments; Iron; Neutrino sources; Particle measurements; Pattern recognition; Prototypes; Spectroscopy; Steel; Testing; Gas detectors; neutrinos; particle measurements; particle tracking;
fLanguage
English
Journal_Title
Nuclear Science, IEEE Transactions on
Publisher
ieee
ISSN
0018-9499
Type
jour
DOI
10.1109/TNS.2004.829659
Filename
1312002
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